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Ab initio protein structure assembly using continuous structure fragments and optimized knowledge-based force field

机译:从头开始进行蛋白质结构组装,使用连续结构片段和基于知识的优化力场

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Ab initio protein folding is one of the major unsolved problems in computational biology owing to the difficulties in force field design and conformational search. We developed a novel program, QUARK, for template-free protein structure prediction. Query sequences are first broken into fragments of 1-20 residues where multiple fragment structures are retrieved at each position from unrelated experimental structures. Full-length structure models are then assembled from fragments using replica-exchange Monte Carlo simulations, which are guided by a composite knowledge-based force field. A number of novel energy terms and Monte Carlo movements are introduced and the particular contributions to enhancing the efficiency of both force field and search engine are analyzed in detail. QUARK prediction procedure is depicted and tested on the structure modeling of 145 nonhomologous proteins. Although no global templates are used and all fragments from experimental structures with template modeling score >0.5 are excluded, QUARK can successfully construct 3D models of correct folds in one-third cases of short proteins up to 100 residues. In the ninth community-wide Critical Assessment of protein Structure Prediction experiment, QUARK server outperformed the second and third best servers by 18 and 47% based on the cumulative Z-score of global distance test-total scores in the FM category. Although ab initio protein folding remains a significant challenge, these data demonstrate new progress toward the solution of the most important problem in the field.
机译:由于力场设计和构象搜索的困难,从头算蛋白质折叠是计算生物学中尚未解决的主要问题之一。我们开发了一种新颖的程序QUARK,用于无模板的蛋白质结构预测。首先将查询序列分解为1-20个残基的片段,在该片段中,从无关的实验结构的每个位置检索多个片段结构。然后,使用副本交换蒙特卡洛模拟从片段中组装全长结构模型,该模拟由基于复合知识的力场引导。介绍了许多新颖的能量项和蒙特卡洛运动,并详细分析了对提高力场和搜索引擎效率的特殊贡献。描述了QUARK预测程序,并在145种非同源蛋白质的结构模型上进行了测试。尽管没有使用全局模板,并且排除了模板建模得分> 0.5的实验结构的所有片段,但QUARK可以在三分之一情况下(最多100个残基的短蛋白)成功构建正确折叠的3D模型。在第九个社区范围内的蛋白质结构预测的关键评估实验中,基于FM类别中全球距离测试总得分的累积Z得分,QUARK服务器的性能分别位居第二和第三名服务器的18%和47%。尽管从头算起蛋白质折叠仍然是一个重大挑战,但这些数据证明了在解决该领域最重要问题方面的新进展。

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